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Bending strength and effective modulus of atmospheric ice

机译:大气冰的弯曲强度和有效模量

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Bending strength and the effective modulus of atmospheric ice accumulated in a closed loop wind tunnel at temperatures -6 ℃, -10℃ and -20℃ with a liquid water content of 2.5 g/m~3 have been studied at different strain rates. More than 120 tests have been conducted. Ice samples, accumulated at each temperature, have been tested at the accumulation temperature. In addition, tests have been performed at temperatures of - 3℃ and - 20℃, for the ice accumulated at -10℃. These tests showed a clear dependency of bending strength of atmospheric ice on test temperature at low strain rates. Strain rate effects are implied because the spread in bending strength for the different temperatures diminishes as strain rate increases. The results also reveal that, in most cases, the effective modulus of atmospheric ice increases with increasing strain rate. The bending strength of atmospheric ice accumulated at -10 ℃ has been found to be greater than that of ice accumulated at - 6 ℃ and-20 ℃. The results show that the effective modulus of ice accumulated at - 20 ℃ at higher strain rates is less than that of the two other types.
机译:研究了在-6℃,-10℃和-20℃温度下液态水含量为2.5 g / m〜3的闭环风洞中累积的大气冰的弯曲强度和有效模量。已经进行了120多次测试。在每个温度下累积的冰样本已在累积温度下进行了测试。此外,已经在-3℃和-20℃的温度下对-10℃积聚的冰进行了测试。这些测试表明,在低应变速率下,大气冰的弯曲强度与测试温度之间存在明显的相关性。之所以暗示了应变率效应,是因为随着应变率的增加,不同温度下抗弯强度的分布会减小。结果还表明,在大多数情况下,大气冰的有效模量随应变率的增加而增加。已发现在-10℃累积的大气冰的弯曲强度大于在-6℃和-20℃累积的冰的弯曲强度。结果表明,在较高的应变速率下,在-20℃累积的冰的有效模量小于其他两种类型的冰。

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